论文标题
使用新的Z> 6.3类星体样品的Z〜6 Z〜6层间介质光学深度和传输峰值的测量值
Measurements of the z ~ 6 Intergalactic Medium Optical Depth and Transmission Spikes Using a New z > 6.3 Quasar Sample
论文作者
论文摘要
我们使用新的类星体视线样本(包括32个类星线,$ 6.308 \ le z \ le7.00 $)报告了$ 5.3 <z <6.5 $的有效光学深度,以$ 5.3 <z <6.5 $的$ 5.3 <z <6.5 $报告新的测量值。这些类星体提供了大型统计样本,以测量在电离时期过渡阶段的IgM演化。我们使用VLT,Keck,Gemini,LBT和MMT构建了这些类星体的深度光谱的数据集。我们使用单个光谱和堆叠频谱的ly $α$森林来测量$ 5.36 <z <6.57 $的有效光学深度。单个测量的大量分散与以前的工作一致,这表明是不均匀的回离过程。结合我们的新测量结果和以前的结果,我们获得了$ a $α$有效的光学深度演变的最佳拟合,$ z> 5.3 $,$τ\ propto(1+z)^{8.6 \ pm1.0} $。然后,我们估计使用Ly $β$森林观察到的$β$有效的光学深度,并将其转换为LY $α$光学深度进行比较,这为IGM光学深度的演变提供了其他约束。基于$β$的LY $β$的测量通常与从Ly $α$森林中获得的最佳拟合进化一致。使用此新样本,我们确定389 ly $α$和50 ly $β$传输峰值,$ 5.5 <z <6.3 $。使用传输尖峰估算的LY $α$光学深度的上限与我们最适合的演化非常一致。这些高红移透射尖峰的数量密度的演变表明在电离结束时具有快速的过渡阶段。我们的光学深度测量与流体动力模拟的比较表明Igm中性氢分数$ \ langle f _ {\ rm hi} \ rangle \ rangle \ gtrsim10^{ - 4} $ at $ z = 6 $。
We report new measurements of the intergalactic medium (IGM) Ly$α$ and Ly$β$ effective optical depth at $5.3<z<6.5$, using a new sample of quasar sightlines including 32 quasars at $6.308\le z\le7.00$. These quasars provide a large statistical sample to measure the IGM evolution during the transition phase of the reionization epoch. We construct a data set of deep optical spectra of these quasars using VLT, Keck, Gemini, LBT, and MMT. We measure the Ly$α$ effective optical depth at $5.36<z<6.57$ using the Ly$α$ forests of both individual spectra and the stacked spectrum. The large scatter of individual measurements is consistent with previous work, suggesting an inhomogeneous reionization process. Combining our new measurements and previous results, we obtain a best-fit for the Ly$α$ effective optical depth evolution at $z>5.3$, $τ\propto(1+z)^{8.6\pm1.0}$. We then estimate the observed Ly$β$ effective optical depth using Ly$β$ forests and convert them to Ly$α$ optical depth for comparison, which provides additional constraints on the evolution of the IGM optical depth. The Ly$β$-based measurements are generally in agreement with the best-fit evolution obtained from Ly$α$ forests. Using this new sample, we identify 389 Ly$α$ and 50 Ly$β$ transmission spikes at $5.5<z<6.3$. The upper limits of Ly$α$ optical depth estimated using transmission spikes are well consistent with our best-fit evolution. The evolution in number density of these high-redshift transmission spikes suggests a rapid transition phase at the end of the reionization. Comparison of our optical depth measurements with hydrodynamical simulations indicates a IGM neutral hydrogen fraction $\langle f_{\rm HI}\rangle\gtrsim10^{-4}$ at $z=6$.